Literature DB >> 25318461

Direct online HPLC-CV-AFS method for traces of methylmercury without derivatisation: a matrix-independent method for urine, sediment and biological tissue samples.

Christoph-Cornelius Brombach1, Zuzana Gajdosechova, Bin Chen, Andrew Brownlow, Warren T Corns, Jörg Feldmann, Eva M Krupp.   

Abstract

Mercury (Hg) is a global pollutant which occurs in different species, with methylmercury (MeHg) being the critical compound due to its neurotoxicity and bioaccumulation through the food chain. Methods for trace speciation of MeHg are therefore needed for a vast range of sample matrices, such as biological tissues, fluids, soils or sediments. We have previously developed an ultra-trace speciation method for methylmercury in water, based on a preconcentration HPLC cold vapour atomic fluorescence spectrometry (HPLC-CV-AFS) method. The focus of this work is mercury speciation in a variety of sample matrices to assess the versatility of the method. Certified reference materials were used where possible, and samples were spiked where reference materials were not available, e.g. human urine. Solid samples were submitted for commonly used digestion or extraction processes to obtain a liquid sample for injection into the analytical system. For MeHg in sediment samples, an extraction procedure was adapted to accommodate MeHg separation from high amounts of Hg(2+) to avoid an overload of the column. The recovery for MeHg determination was found to be in the range of 88-104% in fish reference materials (DOLT-2, DOLT-4, DORM-3), lobster (TORT-2), seaweed (IAEA-140/TM), sediments (ERM(®)-CC580) and spiked urine and has been proven to be robust, reliable, virtually matrix-independent and relatively cost-effective. Applications in the ultra-trace concentration range are possible using the preconcentration up to 200 mL, while for higher MeHg-containing samples, lower volumes can be applied. A comparison was carried out between species-specific isotope dilution gas chromatography inductively coupled plasma mass spectrometry (SSID-GC-ICP-MS) as the gold standard and HPLC-CV-AFS for biological tissues (liver, kidney and muscle of pilot whales), showing a slope of 1.008 and R (2) = 0.97, which indicates that the HPLC-CV-AFS method achieves well-correlated results for MeHg in biological tissues.

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Year:  2014        PMID: 25318461     DOI: 10.1007/s00216-014-8254-1

Source DB:  PubMed          Journal:  Anal Bioanal Chem        ISSN: 1618-2642            Impact factor:   4.142


  4 in total

1.  High-precision isotopic analysis sheds new light on mercury metabolism in long-finned pilot whales (Globicephala melas).

Authors:  Eduardo Bolea-Fernandez; Ana Rua-Ibarz; Eva M Krupp; Jörg Feldmann; Frank Vanhaecke
Journal:  Sci Rep       Date:  2019-05-13       Impact factor: 4.379

2.  Comparison of Simultaneous Quantitative Analysis of Methylmercury and Inorganic Mercury in Cord Blood Using LC-ICP-MS and LC-CVAFS: The Pilot Study of the Japan Environment and Children's Study.

Authors:  Miyuki Iwai-Shimada; Yayoi Kobayashi; Tomohiko Isobe; Shoji F Nakayama; Makiko Sekiyama; Yu Taniguchi; Shin Yamazaki; Takehiro Michikawa; Masako Oda; Hiroshi Mitsubuchi; Masafumi Sanefuji; Shouichi Ohga; Nathan Mise; Akihiko Ikegami; Reiko Suga; Masayuki Shimono
Journal:  Toxics       Date:  2021-04-09

3.  In vivo formation of natural HgSe nanoparticles in the liver and brain of pilot whales.

Authors:  Zuzana Gajdosechova; Mohammed M Lawan; Dagmar S Urgast; Andrea Raab; Kirk G Scheckel; Enzo Lombi; Peter M Kopittke; Katrin Loeschner; Erik H Larsen; Glenn Woods; Andrew Brownlow; Fiona L Read; Jörg Feldmann; Eva M Krupp
Journal:  Sci Rep       Date:  2016-09-28       Impact factor: 4.379

4.  Molecular Recalcitrance of Hair Passing the Digestive System of a Canid.

Authors:  Johannes Tintner; Jennifer Hatlauf; Heidi Weber; József Lanszki
Journal:  Molecules       Date:  2020-09-25       Impact factor: 4.411

  4 in total

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